Schaltkreis konfigurierbar basierend auf Vorrichtungsausrichtung

    公开(公告)号:DE112014002366T5

    公开(公告)日:2016-01-21

    申请号:DE112014002366

    申请日:2014-05-07

    Inventor: SERRE JEFFERY J

    Abstract: Die vorliegende Offenbarung betrifft einen Schaltkreis, der basierend auf der Vorrichtungsausrichtung konfigurierbar ist. Ein beispielhafter Schaltkreis kann zumindest eine Vorrichtungsstelle und konfigurierbare Leiter umfassen. Die zumindest eine Vorrichtungsstelle kann zumindest zwei leitende Kontaktstellen umfassen, auf die eine Vorrichtung durch ein Herstellungsverfahren gesetzt werden kann. Die konfigurierbaren Leiter können mit jeder der zumindest zwei leitenden Kontaktstellen gekoppelt sein. Die konfigurierbaren Leiter können konfiguriert werden, indem leitendes Material zu zumindest einem konfigurierbaren Leiter hinzugefügt wird oder zumindest ein Teil von zumindest einem konfigurierbaren Leiter entfernt wird. Zum Beispiel kann leitendes Material hinzugefügt werden, um einen Abstand zwischen zwei Segmenten eines konfigurierbaren Leiters zu schließen, um einen Leitungspfad zu bilden. Alternativ dazu kann zumindest ein Teil von zumindest einem von einer Vielzahl von konfigurierbaren Leitern, die mit einer leitenden Kontaktstelle gekoppelt sind, entfernt (z.B. geschnitten) werden, um die Leitung in dem zumindest einen konfigurierbaren Leiter zu unterbrechen.

    LED SOURCE WITH AN INTEGRATED HEAT PIPE

    公开(公告)号:CA2738084A1

    公开(公告)日:2010-04-08

    申请号:CA2738084

    申请日:2009-08-24

    Abstract: A light source (10) comprises a tubular glass heat pipe (12) having a given inside diameter ID. A tubular fiberglass wick (14) is positioned within the glass heat pipe (12). The fiberglass wick (14) has an outside diameter OD substantially equal to the given inside diameter ID and has a substantially centrally located open chamber (16) extending the length thereof. A quantity of an evaporable-condensable medium (17) is provided within the glass heat pipe (12) and a metal cap (18) selected from the group of glass-sealing metals and alloys is fixed to a proximal end (20) of the glass heat pipe (12). Heat dissipaters (22) are fixed to the distal end (24) of the heat pipe (12) and a light emitting diode (26) is fixed to the metal cap (18). Power conducting traces (28) are formed with the heat pipe (12) and are electrically connected to the light emitting diode (26). A lamp (40) can be formed with a plurality of the light sources (10).

    LED SOURCE WITH AN INTEGRATED HEAT PIPE

    公开(公告)号:CA2738084C

    公开(公告)日:2016-10-11

    申请号:CA2738084

    申请日:2009-08-24

    Abstract: A light source (10) comprises a tubular glass heat pipe (12) having a given inside diameter ID. A tubular fiberglass wick (14) is positioned within the glass heat pipe (12). The fiberglass wick (14) has an outside diameter OD substantially equal to the given inside diameter ID and has a substantially centrally located open chamber (16) extending the length thereof. A quantity of an evaporable-condensable medium (17) is provided within the glass heat pipe (12) and a metal cap (18) selected from the group of glass-sealing metals and alloys is fixed to a proximal end (20) of the glass heat pipe (12). Heat dissipaters (22) are fixed to the distal end (24) of the heat pipe (12) and a light emitting diode (26) is fixed to the metal cap (18). Power conducting traces (28) are formed with the heat pipe (12) and are electrically connected to the light emitting diode (26). A lamp (40) can be formed with a plurality of the light sources (10).

    LED SOURCE WITH AN INTEGRATED HEAT PIPE
    6.
    发明公开
    LED SOURCE WITH AN INTEGRATED HEAT PIPE 有权
    与一体式热管LED光源

    公开(公告)号:EP2329187A4

    公开(公告)日:2012-09-19

    申请号:EP09818178

    申请日:2009-08-24

    Abstract: A light source (10) comprises a tubular glass heat pipe (12) having a given inside diameter ID. A tubular fiberglass wick (14) is positioned within the glass heat pipe (12). The fiberglass wick (14) has an outside diameter OD substantially equal to the given inside diameter ID and has a substantially centrally located open chamber (16) extending the length thereof. A quantity of an evaporable-condensable medium (17) is provided within the glass heat pipe (12) and a metal cap (18) selected from the group of glass-sealing metals and alloys is fixed to a proximal end (20) of the glass heat pipe (12). Heat dissipaters (22) are fixed to the distal end (24) of the heat pipe (12) and a light emitting diode (26) is fixed to the metal cap (18). Power conducting traces (28) are formed with the heat pipe (12) and are electrically connected to the light emitting diode (26). A lamp (40) can be formed with a plurality of the light sources (10).

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